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Effect of fouling deposit shape on its thermal resistance

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The paper presents the results of computational analysis concerning the effect of non-uniformity in the fouling layer shape deposited onto the outer surface of a circular tube on the thermal resistance of the deposit. Taken into considerations modes of heat transfer from a hot gas to the outer surface of the fouling layer are: either by pure convection or radiation, and by both these modes combined. A fluid flowing inside the tube exchanges heat by only convection at constant transfer coefficient. The boundary weighted residual approach based on the variational principle and implementation of the Trefftz method have been applied in analysis of the problem under study. The main outcomes from the paper are results of systematic numerical experiments, illustrating influence of 2D fouling deposit shape (at the outer periphery of a circular tube) on its thermal resistance. In turn, the study demonstrates a significant effect of the deposit shape that when it is in the form of a non-uniform layer can reduce the fouling resistance by order of 35%-80% compared to the deposit of the uniform thickness around the tube periphery.
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3--26
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Bibliogr. 15 poz.,Rys., tab., wykr., wz.,
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Bibliografia
  • 1. GAVRILOV A. F., MALKIN B. M.: Fouling and cleaning of heat transfer surfaces in boilers , Energija, Moskva 1980 (in Russian).
  • 2. KNESCHKE A.: Computational analysis of steady-state temperature fields, Ing.-Arch., 30, 1961, 117-122 (in German).
  • 3. KOLODZIEJ J., UŚCIŁOWSKA A.: Trefftz-type procedure for Laplace equation on domains with circular holes, circular inclusions, corners, slits, and symmetry, [in:] Kleiber M., Mang H.A., Zielinski A.P., eds., Computer Assisted Mechanics and Engineering Sciences, Vol. 4, Nos. 3/4, 1997, 501-519; 1st Inter. Workshop on Trefftz Method - Recent Developments and Perspectives, Polish Scientific Publishers PWN, 1997.
  • 4. KUZNETSOV N. V.: Operation Processes and Problems of Improvement for Convective Heat Transfer Surfaces in Boilers, GEI, Moskva 1958, (in Russian).
  • 5. OTS A. A.: Processes in Boilers at Combustion of Bituminous-estonian-shales and Kansko-Atchinski Coals, Energija, Moskva 1977, (in Russian).
  • 6. PRESS W. H., FLANNERY B. P., TEUKOLSKY A., VETTERLING W. T.: Numerical Recipes. The Art of Scientific Computing, Cambridge University Press, 1986.
  • 7. REID W. T.: External Corrosion and Deposits, Boilers and Gas Turbines, American Elsevier Publishing, New York 1971.
  • 8. SKIEPKO T.: Temperature field in tube metal of convection surface of steam boiler, Archives of Energetics, No. 4, 1980, 227-242, (in Polish).
  • 9. SKIEPKO T.: Variational method of calculation of temperature field in metal tube with an outer fouling layer m a steam boiler, Archives of Energetics, XIII, 1984, No. 2, 133-144, (in Polish).
  • 10. SKIEPKO T.: A method of calculation temperature distribution in the wall of a boiler tube and an example of its application, Dozór Techniczny, No. 4, 1984, 136-140, (in Polish).
  • 11. SKIEPKO T.: The temperature field in a metal tube with outer fouling layer, Archives of Thermodynamics, 7(No.2), 1986, 148-160, (in Polish).
  • 12. SKIEPKO T.: Fouling shape - yet another factor to mitigate fouling thermal resistance, [in:] Bott T. R., Watkinson A.P., Panchal C. B. (Eds.), Proc. of UEF Conf. on Mitigation of Heat Exchanger Fouling and Its Economic and Environmental Implications, Banff, Canada, 11-16 July, 1999.
  • 13. SKIEPKO T.: Heat Transmission Across Fouled Tubes Analysed by Trefftz Approach, Computer Assisted Mechanics and Engineering Sciences (GAMES), Central European Association For Computational Mechanics, Institute of Fundamental Technological Research, Polish Academy of Sciences, Vol. 9, nr 2, , 2002, 239-269.
  • 14. TREFFTZ. E.: On a certain approach equivalent to the Ritz method, Proc. of Inter. Congress for Techn. Mechanics, Verhanl. d.2: 131-137, Zurich 1926 (in German).
  • 15. ZUSMAN V. M, TICHONOVA V. V.: On formation of ash deposits on tubes made of 12% chromic steels, Teploenergetika, (No. 11), 1970, 57-61, (in Russian).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BGPK-2379-9053
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